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Condition assessment, remaining useful life prediction and life extension decision making for offshore oil and gas assets

机译:条件评估,剩余的近海石油和天然气资产的使用寿命预测和生命延长决策

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摘要

Offshore oil and gas assets are highly complex structures comprising of several components, designed to have a lifecycle of about 20 to 30 years of working under harsh operational and environmental conditions. These assets, during their operational lifetime, are subjected to various degradation mechanisms such as corrosion, erosion, wear, creep and fatigue cracks. In order to improve economic viability and increase profitability, many operators are looking at extending the lifespan of their assets beyond the original design life, thereby making life extension (LE) an increasingly critical and highly-discussed topic in the offshore oil and gas industry. In order to manage asset aging and meet the LE requirements, offshore oil and gas operators have adopted various approaches such as following maintenance procedures as advised by the original equipment manufacturer (OEM), or using the experience and expertise of engineers and inspectors. However, performing these activities often provides very limited value addition to operators during the LE period of operation. This paper aims to propose a systematic framework to help operators meet LE requirements while optimizing their cost structure. This framework establishes an integration between three individual life assessment modules, namely: condition assessment, remaining useful life (RUL) prediction and LE decision-making. The benefits of the proposed framework are illustrated through a case study involving a three-phase separator system on a platform which was constructed in the mid-1970s in West Africa. The results of this study affirm the effectiveness of this framework in minimizing catastrophic failures during the LE phase of operations, whilst ensuring compliance to regulatory requirements.
机译:海上石油和天然气资产具有高度复杂的结构,包括几种组分,旨在在恶劣的运营和环境条件下具有约20至30年的生命周期。这些资产在运行寿命期间受到各种降解机制,如腐蚀,侵蚀,磨损,蠕变和疲劳裂缝。为了提高经济可行性并提高盈利能力,许多运营商正在寻求将其资产的寿命扩展到原始设计生活中,从而使生活延伸(LE)在海上石油和天然气工业中成为一个日益关键和高度讨论的话题。为了管理资产老化并满足LE要求,海上石油和天然气运营商采用了原始设备制造商(OEM)的建议,或使用工程师和检查员的经验和专业知识等各种方法。但是,执行这些活动通常在LE期间对运营商提供非常有限的价值。本文旨在提出系统框架,帮助运营商满足LE要求,同时优化其成本结构。该框架在三个个人寿命评估模块之间建立了一体化,即:条件评估,剩余的使用寿命(RUL)预测和LE决策。通过涉及在西非中部20世纪70年代建造的平台上建造的三相分离系统的案例研究来说明所提出的框架的益处。本研究的结果肯定了该框架在最大限度地减少了在业务阶段的灾难性失败时的有效性,同时确保对监管要求的遵守情况。

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